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CAE Approach for Thermal-Acoustical Protective Shields

机译:热声保护屏蔽的CAE方法

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Today, Computer Aided Engineering (CAE) is a feature that becomes more and more essential in the development of Thermal-Acoustical Protective Shields (TAPS). The development cycle of TAPS needs to be reduced while simultaneously reducing costs. The performance, functionality and visual appearance need to be improved as well. This paper will describe our general CAE approach, which is based on the use of different CAD systems and Finite Element Analysis (FEA). We will describe how we use the results of our approach in the development of new TAPS. Because this approach is based on the knowledge of the parameters that exist and how they influence a TAPS function, we will first discuss the most important of these parameters. Here we split our discussion into "What is a TAPS," "What are the main steps of making a TAPS -Designing, prototype," and "How a TAPS works in an engine." We will then explain the different FEA utilization's. Here we will describe how we obtain the information about thermal shielding, acoustical behavior, obtaining the blanket shape, the forming process, and how we can optimize process and function. We will compare all these stages in general with the current (practical) approach and show the advantages of our new approach. We will look at experimental methods to explain how we can verify the calculated results.
机译:如今,计算机辅助工程(CAE)是一种在热声保护罩(水龙头)的发展中变得越来越重要的特征。在同时降低成本的同时需要减少抽头的开发周期。也需要提高性能,功能和视觉外观。本文将描述我们的通用CAE方法,基于使用不同的CAD系统和有限元分析(FEA)。我们将描述我们如何在新水龙头开发中使用我们的方法的结果。因为这种方法是基于存在存在的参数的知识以及它们如何影响水龙函数,我们将首先讨论这些参数中最重要的。在这里,我们将我们的讨论分解为“什么是水龙头”,“制作水龙头,原型”和“抽头在发动机中有效的主要步骤是什么。”然后我们将解释不同的FEA利用率。在这里,我们将描述我们如何获得有关热屏蔽,声学行为,获得毯子形状,形成过程以及我们如何优化过程和功能的信息的信息。我们将通过目前的(实用)方法将所有这些阶段进行比较,并显示出新方法的优势。我们将查看实验方法来解释我们如何验证计算结果。

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